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Thermal Analysis of a Magnetic Brake Using Infrared Techniques and 3D Cell Method with a New Convective Constitutive Matrix

机译:基于红外技术和新型对流本构矩阵的3D单元方法对电磁制动器的热分析

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摘要

In this work we analyse the temperature distribution in a conductor disk in transitory regime. The disk is in motion in a stationary magnetic field generated by a permanent magnet and so, the electric currents induced inside it generate heat. The system acts as a magnetic brake and is analysed using infrared sensor techniques. In addition, for the simulation and analysis of the magnetic brake, a new thermal convective matrix for the 3D Cell Method (CM) is proposed. The results of the simulation have been verified by comparing the numerical results with those obtained by the Finite Element Method (FEM) and with experimental data obtained by infrared technology. The difference between the experimental results obtained by infrared sensors and those obtained in the simulations is less than 0.0459%.
机译:在这项工作中,我们分析了瞬态状态下导体盘中的温度分布。磁盘在由永久磁铁产生的固定磁场中运动,因此,磁盘内部感应的电流会产生热量。该系统充当电磁制动器,并使用红外传感器技术进行分析。此外,为了对电磁制动器进行仿真和分析,提出了一种用于3D单元方法(CM)的新型热对流矩阵。通过将数值结果与通过有限元方法(FEM)获得的数值结果以及通过红外技术获得的实验数据进行比较,已验证了仿真结果。通过红外传感器获得的实验结果与通过仿真获得的结果之间的差异小于0.0459%。

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